物理
光学
光子
框架(结构)
等离子体
探测器
电子
光电阴极
等离子体诊断
探测量子效率
闪烁体
核物理学
原子物理学
计算机科学
工程类
人工智能
图像(数学)
结构工程
图像质量
作者
N. Izumi,G. N. Hall,A. C. Carpenter,F. V. Allen,J. G. Cruz,B. Felker,D. Hargrove,J. P. Holder,J. D. Kilkenny,A. Lumbard,R C Montesanti,N. E. Palmer,K. Piston,G. Stone,M. Thao,R. Vern,R. Zacharias,O. L. Landen,R. Tommasini,D. K. Bradley
摘要
Recently developed diagnostic techniques at LLNL require recording backlit images of extremely dense imploded plasmas using hard x-rays, and demand the detector to be sensitive to photons with energies higher than 50 keV [R. Tommasini et al., Phys. Phys. Plasmas 18, 056309 (2011); G. N. Hall et al., “AXIS: An instrument for imaging Compton radiographs using ARC on the NIF,” Rev. Sci. Instrum. (these proceedings)]. To increase the sensitivity in the high energy region, we propose to use a combination of two MCPs. The first MCP is operated in a low gain regime and works as a thick photocathode, and the second MCP works as a high gain electron multiplier. We tested the concept of this dual MCP configuration and succeeded in obtaining a detective quantum efficiency of 4.5% for 59 keV x-rays, 3 times larger than with a single plate of the thickness typically used in NIF framing cameras.
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